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Updated: Feb 13, 2026

Profiling Sensitivity to Targeted Therapies in EGFR-Mutant NSCLC Patient-Derived Organoids
Published on: November 22, 2021
[Patient with Three EGFR Mutations - Gradual Development of Resistance to Previous Targeted Treatment]
Background:
Patients with sensitive EGFR mutations are already being treated with first and second generation tyrosine kinase inhibitors (TKIs). However, resistance to these drugs occurs over time, and over half of all cases is caused by a mutation (T790M) in the EGFR kinase domain. Osimertinib offers a new treatment option that overcomes this problem. Unfortunately, resistance to this drug also develops after several months of treatment and is caused by another mutation (C797S) in EGFR.
Case Report:
Our case report provides evidence for the progressive development of EGFR-TKI resistance in a patient with a deletion of exon 19 in the EGFR gene. First, based on a mutation (T790M) identified after afatinib treatment and a subsequent mutation (C797S) mutation identified after osimertinib treatment. We mention overcoming this resistance (C797S) mutation by using 4th generation EGFR-TKI and other alternative procedures (chemotherapy, immunotherapy, and combinations of older EGFR-TKI generations). We also mention a rare case of peritoneal metastasis that occurred after previous treatment with osimertinib that we attempted to ameliorate by using erlotinib because the impaired condition of the patient did not allow treatment by chemotherapy. There are documented cases in which erlotinib has been successfully given to patients with peritoneal metastases and patients with the EGFR mutation C797S following progression to afatinib. This was not the case in our patient, probably because of the remaining EGFR mutation T790M.
Conclusion:
In our case report, erlotinib did not show efficacy after progression to osimetinib. Nowadays, chemotherapy is the only possible treatment in patients with good a performance status. The next-generation of TKIs are undergoing promising developments.Key words: EGFR - deletion on exon 19 - mutation T790M - mutation C797S - afatinib - osimertinibSubmitted: 12. 9. 2017Accepted: 12. 10. 2017 This project was supported by grant AZV 17-30 748A. The authors declare they have no potential conflicts of interest concerning drugs, products, or services used in the study. The Editorial Board declares that the manuscript met the ICMJE recommendation for biomedical papers.
Insights
This case report details EGFR-TKI resistance progression, from T790M after afatinib to C797S after osimertinib. Erlotinib failed to overcome C797S resistance in this patient.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Epidermal Growth Factor Receptor (EGFR) mutations drive non-small cell lung cancer (NSCLC).
- Tyrosine Kinase Inhibitors (TKIs) target EGFR mutations but acquired resistance is common.
- The T790M mutation confers resistance to 1st/2nd generation EGFR-TKIs, while C797S emerges after 3rd generation TKIs like osimertinib.
Observation:
- This case report describes progressive EGFR-TKI resistance in a patient with an exon 19 deletion.
- The patient developed T790M mutation after afatinib and C797S mutation after osimertinib treatment.
- Peritoneal metastasis occurred after osimertinib, and erlotinib treatment was attempted due to patient's condition.
Findings:
- Erlotinib was ineffective against C797S-mediated resistance post-osimertinib in this patient.
- The presence of the T790M mutation may have contributed to erlotinib's lack of efficacy.
- Chemotherapy remains a primary treatment option for patients with good performance status.
Implications:
- Understanding sequential EGFR mutations is crucial for managing acquired TKI resistance.
- Novel therapeutic strategies, including 4th generation TKIs, are needed to overcome later-generation resistance.
- Further research into combination therapies and alternative treatments is warranted for advanced EGFR-mutated NSCLC.
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